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NSR database version of April 27, 2024.

Search: Author = D.Li

Found 41 matches.

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2023DA07      J.Phys.(London) G50, 045102 (2023)

X.R.Dai, Y.Y.Wang, D.Li, W.J.Zhao, Y.F.Han, X.Y.Han, K.H.Fang

Cross section measurements for 9Be(d, t)8Be reaction at the low-energy region (E ≤ 100 keV)

NUCLEAR REACTIONS 9Be(d, t), E=78-100 keV; measured reaction products; deduced thick-target yields, σ and uncertainties. The low-energy, high-current accelerators at Research Center for Electron Photon Science in Tohoku University.

doi: 10.1088/1361-6471/acb507
Citations: PlumX Metrics


2023WA14      Phys.Rev. C 107, 064322 (2023)

T.Wang, B.-c.He, D.-k.Li, C.-x.Zhou

Prolate-oblate asymmetric shape phase transition in the interacting boson model with SU(3) higher-order interactions

NUCLEAR STRUCTURE 180Hf, 182,184,186W, 188,190,192Os, 194,196Pt, 198,200Hg; calculated excitation energies for yrast band, J, π, yrast band structure, B(E2), quadrupole moment, prolate-oblate shape phase transition. Interacting boson model with SU(3) higher-order interactions (SU3-IBM). Point out that the average deformation of the prolate shape is nearly twice the one of the oblate shape. Comparison to experimental results.

doi: 10.1103/PhysRevC.107.064322
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2022LI02      At.Data Nucl.Data Tables 143, 101476 (2022)

Z.Li, D.Li, J.Yang, X.Jiang, W.Jiang, D.Chen

Non-dissociative ionization cross section of the electronically excited H2 and D2 with atomic-limit principal quantum number n=3 and 4

NUCLEAR REACTIONS 1,2H(e-, X), E<10 keV; calculated electron-impact σ for non-dissociative ionization via the ground vibrational level of the electronically excited H2 and D2.

doi: 10.1016/j.adt.2021.101476
Citations: PlumX Metrics


2022SH47      Eur.Phys.J. A 58, 249 (2022)

R.Sha, J.-H.Cheng, D.-A.Li, Y.-S.Huang, J.Zhao, Y.-T.Hu, D.-Z.Zhang, Y.-B.Wu, T.-P.Yu

Dense short muon source based on laser-ion accelerators

doi: 10.1140/epja/s10050-022-00900-w
Citations: PlumX Metrics


2021MA64      Phys.Lett. B 822, 136638 (2021)

M.A.Martin Contreras, E.Folco Capossoli, D.Li, A.Vega, H.Boschi-Filho

Proton and neutron form factors from deformed gravity/gauge duality

NUCLEAR STRUCTURE 1H, 1NN; analyzed available data; calculated proton (neutron) Sachs form electric nad magnetic factors.

doi: 10.1016/j.physletb.2021.136638
Citations: PlumX Metrics


2020GA03      Phys.Rev. C 101, 014612 (2020)

L.Gan, H.B.Sun, Z.H.Li, S.P.Hu, Y.J.Li, J.Su, B.Guo, S.Q.Yan, Y.B.Wang, S.Zeng, Z.Y.Han, X.Y.Li, D.H.Li, T.L.Ma, Y.P.Shen, Y.Su, E.T.Li, W.P.Liu

Experimental study of the spectroscopic factors of 116-125Sn

NUCLEAR REACTIONS 116,118,120,122,124Sn(p, d), E=18.0 MeV; 116,118,120,122,124Sn(d, p), E=12.0 MeV; measured E(p), I(p), E(d), I(d), σ(θ) using the high-precision Q3D magnetic spectrograph at the CIAE-Beijing HI-13 tandem accelerator. 115,117,119,121,123,125Sn; deduced levels, L-transfers, J, π, spectroscopic factors (SFs). DWBA analysis of σ(θ) data and extraction of the neutron spectroscopic factors using two different sets of systematic optical potential parameters. Comparison with previous experimental data. Proposed a linear formula to relate SFs with S(n).

doi: 10.1103/PhysRevC.101.014612
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetS0225.


2020PA13      Eur.Phys.J. A 56, 78 (2020)

F.Pan, D.Li, S.Cui, Y.Zhang, Z.Feng, J.P.Draayer

Exact solution of spherical mean-field plus multi-pair interaction model with two non-degenerate j-orbits

doi: 10.1140/epja/s10050-020-00084-1
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2020WE01      Phys.Rev. C 101, 014003 (2020)

N.-C.Wei, A.-C.Wang, F.Huang, D.-M.Li

Analysis of the data on spin density matrix elements for γp → K*+ Λ

NUCLEAR REACTIONS 1H(γ, K+Λ), E=1750-3850 MeV; analyzed experimental differential σ(θ, E) data, spin density matrix elements and total σ(E) from CLAS Collaboration using an effective Lagrangian approach; deduced two nucleon resonances in the s channel, dominant reaction channels.

doi: 10.1103/PhysRevC.101.014003
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2019DA08      Eur.Phys.J. A 55, 36 (2019)

L.R.Dai, G.Y.Wang, X.Chen, E.Wang, E.Oset, D.M.Li

The B+ → J/ψωK+ reaction and D*D-bar* molecular states

doi: 10.1140/epja/i2019-12706-6
Citations: PlumX Metrics


2019SH11      Phys.Rev. C 99, 025805 (2019)

Y.P.Shen, B.Guo, Z.H.Li, Y.J.Li, D.Y.Pang, S.Adhikari, Z.D.An, J.Su, S.Q.Yan, X.C.Du, Q.W.Fan, L.Gan, Z.Y.Han, D.H.Li, E.T.Li, X.Y.Li, G.Lian, J.C.Liu, T.L.Ma, C.J.Pei, Y.Su, Y.B.Wang, S.Zeng, Y.Zhou, W.P.Liu

Astrophysical SE2 factor of the 12C (α, γ)16O reaction through the 12C(11B, 7Li)16O transfer reaction

NUCLEAR REACTIONS 12C(11B, 7Li), (11B, 11B), E=50 MeV; 16O(7Li, 7Li), E=26 MeV; measured charged-particle spectra, differential σ(θ) using the Q3D magnetic spectrograph at the HI-13 tandem accelerator of the CIAE-Beijing. 12C(α, γ), E(cm)<5 MeV; deduced astrophysical SE2(300) factor of the ground state. 16O; deduced asymptotic normalization coefficient (ANC) and reduced α width of the 6.917-MeV level from finite-range distorted wave Born approximation (FRDWBA) and coupled-reaction-channel (CRC) analysis using FRESCO code. Comparison with previous experimental values, and with theoretical model predictions. R-matrix analysis of scattering data.

doi: 10.1103/PhysRevC.99.025805
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetS0213. Data from this article have been entered in the XUNDL database. For more information, click here.


2018GA19      Phys.Rev. C 97, 064614 (2018)

L.Gan, H.B.Sun, Z.H.Li, Y.J.Li, J.Su, B.Guo, S.Q.Yan, Y.B.Wang, S.Zeng, Z.Y.Han, X.Y.Li, D.H.Li, T.L.Ma, Y.P.Shen, Y.Su, E.T.Li, S.P.Hu, W.P.Liu

Experimental study of the spectroscopic factors of 90-97Zr

NUCLEAR REACTIONS 90,92,94,96Zr(12C, 12C), (12C, 13C), E=66 MeV; 90,92,94,96Zr(13C, 13C), (13C, 12C), E=64 MeV; measured particle spectra, differential σ(θ) using Q3D magnetic spectrograph at the HI-13 tandem accelerator facility of the CIAE, Beijing; deduced neutron spectroscopic factors using distorted-wave Born approximation (DWBA) calculations. Comparison of spectroscopic results with previous experiments. Relevance to neutron capture reactions in s process for synthesis of heavy elements.

doi: 10.1103/PhysRevC.97.064614
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetS0187.


2018PA12      Phys.Rev. C 97, 034316 (2018)

F.Pan, D.Li, G.Cheng, Z.Qiao, J.Bai, J.P.Draayer

Exactly solvable configuration mixing scheme in the vibrational limit of the interacting boson model

NUCLEAR STRUCTURE 108,110Cd; calculated low-lying low-spin levels, J, π, B(E2) ratios relative to B(E2) for the first 2+ states using intruder configuration mixing scheme in the U(5) (vibrational) limit of the interacting boson model. Comparison with experimental data.

doi: 10.1103/PhysRevC.97.034316
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2017XU11      Eur.Phys.J. A 53, 202 (2017)

H.-g.Xu, D.-k.Li, G.Chen, L.Li

Study on space-time structure of Higgs jet with the HBT correlation method in e+e- collision at√ s = 250 GeV

doi: 10.1140/epja/i2017-12396-0
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2016OS01      Nucl.Phys. A954, 371 (2016)

E.Oset, H.-X.Chen, A.Feijoo, L.-S.Geng, W.-H.Liang, D.-M.Li, J.-X.Lu, V.K.Magas, J.Nieves, A.Ramos, L.Roca, E.Wang, J.-J.Xie

Study of reactions disclosing hidden charm pentaquarks with or without strangeness

doi: 10.1016/j.nuclphysa.2016.04.038
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2016SH16      Eur.Phys.J. A 52, 93 (2016)

Z.She, G.Chen, H.Xu, T.Zeng, D.Li

Centrality dependence of light (anti)nuclei and (anti)hypertriton production in Pb-Pb collisions at √ SNN = 2.76 TEV

doi: 10.1140/epja/i2016-16093-2
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2015LI04      Phys.Rev. C 91, 024311 (2015)

D.-P.Li, S.-W.Chen, Z.-M.Niu, Q.Liu, J.-Y.Guo

Further investigation of relativistic symmetry in deformed nuclei by similarity renormalization group

NUCLEAR STRUCTURE 154Dy; calculated single-particle energies, spin and pseudospin energy splittings as function of β2 deformation parameter, contributions by the nonrelativistic, dynamical, and spin-orbit coupling terms. Origin and breaking mechanism of relativistic symmetries for an axially deformed nucleus. Relativistic symmetry approach using the similarity renormalization group (SRG).

doi: 10.1103/PhysRevC.91.024311
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2015LU06      Phys.Rev. C 91, 035204 (2015)

Q.-F.Lu, R.Wang, J.-J.Xie, X.-R.Chen, D.-M.Li

Nucleon resonances in the γp → φK+Λ reaction near threshold

doi: 10.1103/PhysRevC.91.035204
Citations: PlumX Metrics


2015WA01      Astrophys.J.Suppl.Ser. 215, 26 (2015)

K.Wang, D.F.Li, H.T.Liu, X.Y.Han, B.Duan, C.Y.Li, J.G.Li, X.L.Guo, C.Y.Chen, J.Yan

Systematic Calculations of Energy Levels and Transition Rates of C-like Ions with Z = 13-36

ATOMIC PHYSICS Z = 13-36; calculated energy levels, electric dipole, magnetic dipole, electric quadrupole, and magnetic quadrupole transition rates. Combined relativistic configuration interaction (RCI) and a many-body perturbation theory (MBPT) approach.

doi: 10.1088/0067-0049/215/2/26
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2014GU05      Phys.Rev.Lett. 112, 062502 (2014)

J.-Y.Guo, S.-W.Chen, Z.-M.Niu, D.-P.Li, Q.Liu

Probing the Symmetries of the Dirac Hamiltonian with Axially Deformed Scalar and Vector Potentials by Similarity Renormalization Group

NUCLEAR STRUCTURE 154Dy; calculated single-particle levels, spin energy splitting and their correlation with the deformation parameters.

doi: 10.1103/PhysRevLett.112.062502
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2014HO14      Phys.Lett. B 737, 109 (2014)

K.Horikawa, S.Miyamoto, T.Mochizuki, S.Amano, D.Li, K.Imasaki, Y.Izawa, K.Ogata, S.Chiba, T.Hayakawa

Neutron angular distribution in (γ, n) reactions with linearly polarized γ-ray beam generated by laser Compton scattering

NUCLEAR REACTIONS 197Au, 127I, Cu(polarized γ, n), E<16.7 MeV; measured reaction products, En, In, Eγ, Iγ; deduced yields, neutron angular distribution anisotropy. Comparison with available data.

doi: 10.1016/j.physletb.2014.08.024
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2014LU10      Phys.Rev. C 90, 034002 (2014)

Q.-F.Lu, J.-J.Xie, D.-M.Li

Nucleon pole contribution in the pp → ppK+K- reaction below the φ meson threshold

doi: 10.1103/PhysRevC.90.034002
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2014SH27      Phys.Rev. C 90, 034318 (2014)

M.Shi, D.-P.Li, S.-W.Chen, J.-Y.Guo

Examination of the pseudospin symmetry for the relativistic harmonic oscillator with the similarity renormalization group

doi: 10.1103/PhysRevC.90.034318
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2014ZH09      Phys.Rev. C 89, 034307 (2014)

Z.-L.Zhu, Z.-M.Niu, D.-P.Li, Q.Liu, J.-Y.Guo

Probing single-proton resonances in nuclei by the complex-scaling method

NUCLEAR STRUCTURE 114,116,118,120,122,124,132Sn, 126Ru, 128Pd, 130Cd, 134Te, 136Xe; calculated energies and width of single-proton resonant states. 40Ca, 56,78Ni, 100,132Sn, 208Pb; calculated difference of energies of single-proton resonant states for doubly magic nuclei with and without Coulomb exchange terms. Complex scaling method with relativistic mean-field theory (RMF-CMS). Comparison with other theoretical calculations.

doi: 10.1103/PhysRevC.89.034307
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2013CH42      Phys.Rev. C 88, 034908 (2013)

G.Chen, H.Chen, J.Wu, D.-S.Li, M.-J.Wang

Centrality dependence of light (anti)nuclei and (anti)hypertriton production in Au+Au collisions at √ sNN=200 GeV

doi: 10.1103/PhysRevC.88.034908
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2013LI18      Phys.Rev. C 87, 044311 (2013)

D.-P.Li, S.-W.Chen, J.-Y.Guo

Further investigation of relativistic symmetry with the similarity renormalization group

doi: 10.1103/PhysRevC.87.044311
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2012CH44      Phys.Rev. C 86, 054910 (2012)

G.Chen, Y.-L.Yan, D.-S.Li, D.-M.Zhou, M.-J.Wang, B.-G.Dong, B.-H.Sa

Antimatter production in central Au+Au collisions at √ sNN=200 GeV

doi: 10.1103/PhysRevC.86.054910
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2008CH21      Eur.Phys.J. A 37, 227 (2008)

G.Chen, D.-K.Li, L.-S.Liu

Energy dependence of Levy stability and multi-fractal spectrum in e+e- collisions

doi: 10.1140/epja/i2008-10624-4
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2008WA11      Nucl.Instrum.Methods Phys.Res. B266, 3302 (2008)

S.Wang, Y.Liu, D.Li, M.Chen

Study of 26Al measurement on the Shanghai Mini-cyclotron based AMS

doi: 10.1016/j.nimb.2008.04.007
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2008ZH10      Radiochim.Acta 96, 327 (2008)

H.-T.Zhang, F.R.Zhu, J.Xu, Y.H.Dai, D.M.Li, X.W.Yi, L.X.Zhang, Y.G.Zhao

Age determination of plutonium material by alpha spectrometry and thermal ionization mass spectrometry

RADIOACTIVITY 241Pu(β-), 241Am(α); measured Eγ, Eα, 241Pu/241Am activity ratio. HPGe detectors, Ion-implanted Si charged particle detector. Thermal ionization mass spectrometry.

doi: 10.1524/ract.2008.1499
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2006LI39      Eur.Phys.J. A 28, 369 (2006)

D.-M.Li, Z.Li

Strange axial-vector mesons mixing angle

doi: 10.1140/epja/i2006-10067-y
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2005LI13      J.Nucl.Sci.Technol.(Tokyo) 42, 259 (2005)

D.Li, K.Imasaki, S.Miyamoto, S.Amano, T.Mochizuki

Experiment on Photonuclear Reaction Induced by Laser Compton Scattering Gamma-Ray

NUCLEAR REACTIONS 197Au(γ, n), E=spectrum; measured activation yield. Incident gammas from laser Compton scattering.

doi: 10.1080/18811248.2005.9726388
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2005LI36      Eur.Phys.J. A 25, 263 (2005)

D.-M.Li, K.-W.Wei, H.Yu

A possible assignment for the ground scalar meson nonet

doi: 10.1140/epja/i2005-10091-5
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2005LI50      Eur.Phys.J. A 26, 141 (2005)

D.-M.Li, B.Ma, H.Yu

Regarding the axial-vector mesons

doi: 10.1140/epja/i2005-10155-6
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2002LI64      J.Nucl.Sci.Technol.(Tokyo) 39, 1247 (2002)

D.Li, K.Imasaki, M.Aoki

Analysis on Coupling Gamma-ray to Nuclear Giant Resonance

NUCLEAR REACTIONS 135Cs, 129I(γ, γ'X), (γ, γ'), E ≈ 15 MeV; calculated backscattered Eγ, coupling to giant resonance, coupling efficiency. Application to waste transmutation discussed.

doi: 10.1080/18811248.2002.9715317
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1997LI39      Physica C280, 211 (1997)

D.M.Li, D.H.Shan, D.S.Bin, L.J.Hua, J.Yong, T.B.Ting, C.G.Can

Electric Field Gradient Measurements on 111Cd in the High-T(c) Superconductor Bi(1.7)Pb(0.3)Sr2Ca2Cu3O(y)

RADIOACTIVITY 111mCd(IT); measured γγ(θ, H, t); deduced electric field gradients, quadrupole coupling constants in high-Tc superconductor. Perturbed angular correlation method.

doi: 10.1016/S0921-4534(97)01440-8
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1997LI44      J.Radioanal.Nucl.Chem. 220, 69 (1997)

C.Li, J.Guo, D.Li

A Procedure for the Separation of 79Se from Fission Products and Application to the Determination of the 79Se Half-Life

RADIOACTIVITY 79Se(β-); measured T1/2. Chemical separation from fission products.


1996ZH16      J.Radioanal.Nucl.Chem. 212, 93 (1996)

S.Zhang, J.Guo, A.Cui, D.Li, D.Liu

Measurement of the Half Life of 126Sn using a Radiochemical Method

RADIOACTIVITY 126Sn(β-); measured γ spectra; deduced T1/2. High accuracy radiochemical method.


1995YU08      J.Radioanal.Nucl.Chem. 196, 165 (1995)

R.Yu, J.Guo, A.Cui, P.Tang, D.Li, D.Liu

Measurement of the Half-Life of 79Se using a Radiochemical Method

RADIOACTIVITY 79Se(β-) [from 235U(n, F), E=reactor]; measured T1/2. High accuracy radiochemical method.


1994HU15      Phys.Rev.Lett. 73, 2982 (1994)

H.Huang, L.Ahrens, J.G.Alessi, M.Beddo, K.A.Brown, G.Bunce, D.D.Caussyn, D.Grosnick, A.E.Kponou, S.Y.Lee, D.Li, D.Lopiano, A.U.Luccio, Y.I.Makdisi, L.Ratner, K.Reece, T.Roser, H.Spinka, A.G.Ufimtsev, D.G.Underwood, W.van Asselt, N.W.Williams, A.Yokosawa

Preservation of Proton Polarization by a Partial Siberian Snake

doi: 10.1103/PhysRevLett.73.2982
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1994LI48      Radiochim.Acta 64, 95 (1994)

Z.Li, X.Wang, K.Jing, A.Cui, D.Liu, D.Li, Y.Liu, X.Li, C.Liu, S.Su, P.Tang, T.Chih, S.Zhang, S.Zhang, J.Guo

Fission Product Yields from 11.3 MeV Neutron-Induced Fission of 238U

NUCLEAR REACTIONS 238U(n, F), E=11.3 MeV; measured fission fragment yields vs mass. Double fission chamber, γ-ray spectrometer.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset32658.


1993ZH41      Hyperfine Interactions 79, 857 (1993)

S.Zhu, A.Li, S.Zheng, H.Huang, D.Li, H.Din, H.Du, H.Sun

High Tc Superconductivity in Yba2Cu3O(7-x) Studied by PAC and PAS

RADIOACTIVITY 99Mo(β-); measured γγ(θ, H); deduced 99Tc electric field gradient vs temperature in YBa2Cu3O(7-x).

doi: 10.1007/BF00567617
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Note: The following list of authors and aliases matches the search parameter D.Li: , D.A.LI, D.F.LI, D.H.LI, D.K.LI, D.M.LI, D.P.LI, D.S.LI